Cargando…

MicroRNA-140-5p inhibits hepatocellular carcinoma by directly targeting the unique isomerase Pin1 to block multiple cancer-driving pathways

Hepatocellular carcinoma (HCC) is the second leading cause of cancer related-death. As a major common regulator of numerous cancer-driving pathways and a unique therapeutic target, the prolyl isomerase Pin1 is overexpressed in a majority of HCCs, whereas the mechanism underlying Pin1 overexpression...

Descripción completa

Detalles Bibliográficos
Autores principales: Yan, Xingxue, Zhu, Zhendong, Xu, Shenmin, Yang, Li-nan, Liao, Xin-Hua, Zheng, Min, Yang, Dayun, Wang, Jichuang, Chen, Dongmei, Wang, Long, Liu, Xiaolong, Liu, Jingfeng, Chen, Ruey-Hwa, Zhen Zhou, Xiao, Ping Lu, Kun, Liu, Hekun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5382892/
https://www.ncbi.nlm.nih.gov/pubmed/28383568
http://dx.doi.org/10.1038/srep45915
_version_ 1782520185469534208
author Yan, Xingxue
Zhu, Zhendong
Xu, Shenmin
Yang, Li-nan
Liao, Xin-Hua
Zheng, Min
Yang, Dayun
Wang, Jichuang
Chen, Dongmei
Wang, Long
Liu, Xiaolong
Liu, Jingfeng
Chen, Ruey-Hwa
Zhen Zhou, Xiao
Ping Lu, Kun
Liu, Hekun
author_facet Yan, Xingxue
Zhu, Zhendong
Xu, Shenmin
Yang, Li-nan
Liao, Xin-Hua
Zheng, Min
Yang, Dayun
Wang, Jichuang
Chen, Dongmei
Wang, Long
Liu, Xiaolong
Liu, Jingfeng
Chen, Ruey-Hwa
Zhen Zhou, Xiao
Ping Lu, Kun
Liu, Hekun
author_sort Yan, Xingxue
collection PubMed
description Hepatocellular carcinoma (HCC) is the second leading cause of cancer related-death. As a major common regulator of numerous cancer-driving pathways and a unique therapeutic target, the prolyl isomerase Pin1 is overexpressed in a majority of HCCs, whereas the mechanism underlying Pin1 overexpression remains elusive. Here we find that miR-140-5p inhibits HCC by directly targeting Pin1 to block multiple cancer-driving pathways. Bioinformatics analysis, miRNA binding and functional assays identify that miR-140-5p directly interacts with the 3′UTR of Pin1 and inhibits Pin1 translation. Furthermore, like stable Pin1 knockdown, moderate overexpression of miR-140-5p not only eliminates Pin1, but also inhibits cells growth and metastasis. Importantly, these effects of miR-140-5p are largely rescued by reconstitution of Pin1. Moreover, miR-140-5p inhibits multiple Pin1-dependent cancer pathways and suppresses tumor growth in mice. The clinical significance of these findings has been substantiated by the demonstrations that miR-140-5p is frequently down-regulated and inversely correlated with Pin1 overexpression in HCC tissues and cell lines. Given prevalent miR-140-5p downregulation in other cancers and major impact of Pin1 overexpression on activating numerous cancer-driving pathways including global miRNA downregulation, the miR-140-5p/Pin1 axis may play a major role in tumorigenesis and offer promising therapeutic targets for HCC and other cancers.
format Online
Article
Text
id pubmed-5382892
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-53828922017-04-11 MicroRNA-140-5p inhibits hepatocellular carcinoma by directly targeting the unique isomerase Pin1 to block multiple cancer-driving pathways Yan, Xingxue Zhu, Zhendong Xu, Shenmin Yang, Li-nan Liao, Xin-Hua Zheng, Min Yang, Dayun Wang, Jichuang Chen, Dongmei Wang, Long Liu, Xiaolong Liu, Jingfeng Chen, Ruey-Hwa Zhen Zhou, Xiao Ping Lu, Kun Liu, Hekun Sci Rep Article Hepatocellular carcinoma (HCC) is the second leading cause of cancer related-death. As a major common regulator of numerous cancer-driving pathways and a unique therapeutic target, the prolyl isomerase Pin1 is overexpressed in a majority of HCCs, whereas the mechanism underlying Pin1 overexpression remains elusive. Here we find that miR-140-5p inhibits HCC by directly targeting Pin1 to block multiple cancer-driving pathways. Bioinformatics analysis, miRNA binding and functional assays identify that miR-140-5p directly interacts with the 3′UTR of Pin1 and inhibits Pin1 translation. Furthermore, like stable Pin1 knockdown, moderate overexpression of miR-140-5p not only eliminates Pin1, but also inhibits cells growth and metastasis. Importantly, these effects of miR-140-5p are largely rescued by reconstitution of Pin1. Moreover, miR-140-5p inhibits multiple Pin1-dependent cancer pathways and suppresses tumor growth in mice. The clinical significance of these findings has been substantiated by the demonstrations that miR-140-5p is frequently down-regulated and inversely correlated with Pin1 overexpression in HCC tissues and cell lines. Given prevalent miR-140-5p downregulation in other cancers and major impact of Pin1 overexpression on activating numerous cancer-driving pathways including global miRNA downregulation, the miR-140-5p/Pin1 axis may play a major role in tumorigenesis and offer promising therapeutic targets for HCC and other cancers. Nature Publishing Group 2017-04-06 /pmc/articles/PMC5382892/ /pubmed/28383568 http://dx.doi.org/10.1038/srep45915 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Yan, Xingxue
Zhu, Zhendong
Xu, Shenmin
Yang, Li-nan
Liao, Xin-Hua
Zheng, Min
Yang, Dayun
Wang, Jichuang
Chen, Dongmei
Wang, Long
Liu, Xiaolong
Liu, Jingfeng
Chen, Ruey-Hwa
Zhen Zhou, Xiao
Ping Lu, Kun
Liu, Hekun
MicroRNA-140-5p inhibits hepatocellular carcinoma by directly targeting the unique isomerase Pin1 to block multiple cancer-driving pathways
title MicroRNA-140-5p inhibits hepatocellular carcinoma by directly targeting the unique isomerase Pin1 to block multiple cancer-driving pathways
title_full MicroRNA-140-5p inhibits hepatocellular carcinoma by directly targeting the unique isomerase Pin1 to block multiple cancer-driving pathways
title_fullStr MicroRNA-140-5p inhibits hepatocellular carcinoma by directly targeting the unique isomerase Pin1 to block multiple cancer-driving pathways
title_full_unstemmed MicroRNA-140-5p inhibits hepatocellular carcinoma by directly targeting the unique isomerase Pin1 to block multiple cancer-driving pathways
title_short MicroRNA-140-5p inhibits hepatocellular carcinoma by directly targeting the unique isomerase Pin1 to block multiple cancer-driving pathways
title_sort microrna-140-5p inhibits hepatocellular carcinoma by directly targeting the unique isomerase pin1 to block multiple cancer-driving pathways
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5382892/
https://www.ncbi.nlm.nih.gov/pubmed/28383568
http://dx.doi.org/10.1038/srep45915
work_keys_str_mv AT yanxingxue microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT zhuzhendong microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT xushenmin microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT yanglinan microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT liaoxinhua microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT zhengmin microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT yangdayun microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT wangjichuang microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT chendongmei microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT wanglong microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT liuxiaolong microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT liujingfeng microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT chenrueyhwa microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT zhenzhouxiao microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT pinglukun microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways
AT liuhekun microrna1405pinhibitshepatocellularcarcinomabydirectlytargetingtheuniqueisomerasepin1toblockmultiplecancerdrivingpathways